Katoh Kazuo
Laboratory of Human Anatomy and Cell Biology, Faculty of Health Sciences, Tsukuba University of Technology, Tsukuba-city, Ibaraki 305-8521, Japan.
Biomedicines. 2021 Feb 1;9(2):135. doi: 10.3390/biomedicines9020135.
Src protein tyrosine kinases (SFKs) are a family of nonreceptor tyrosine kinases that are localized beneath the plasma membrane and are activated during cell adhesion, migration, and elongation. Due to their involvement in the activation of signal transduction cascades, SFKs have been suggested to play important roles in the determination of cell polarity during cell extension and elongation. However, the mechanism underlying Src-mediated polarity formation remains unclear. The present study was performed to investigate the mechanisms underlying Src-induced cell polarity formation and cell elongation using Src knockout fibroblasts (SYFs) together with an inhibitor of Src. Normal and Src knockout fibroblasts were also transfected with a wild-type c-Src, dominant negative c-Src, or constitutively active c-Src gene to analyze the changes in cell morphology. SYF cells cultured on a glass substrate elongated symmetrically into spindle-shaped cells, with the formation of focal adhesions at both ends of the cells. When normal fibroblasts were treated with Src Inhibitor No. 5, a selective inhibitor of Src tyrosine kinases, they elongated into symmetrical spindle-shaped cells, similar to SYF cells. These results suggest that cell polarity during extension and elongation may be regulated by SFKs and that the expression and regulation of Src are important for the formation of polarity during cell elongation.
Src蛋白酪氨酸激酶(SFKs)是一类非受体酪氨酸激酶家族,定位于质膜下方,在细胞黏附、迁移和伸长过程中被激活。由于它们参与信号转导级联反应的激活,有人提出SFKs在细胞伸展和伸长过程中细胞极性的确定中发挥重要作用。然而,Src介导的极性形成的潜在机制仍不清楚。本研究旨在使用Src基因敲除的成纤维细胞(SYFs)以及Src抑制剂来研究Src诱导的细胞极性形成和细胞伸长的潜在机制。正常和Src基因敲除的成纤维细胞也分别用野生型c-Src、显性负性c-Src或组成型活性c-Src基因进行转染,以分析细胞形态的变化。在玻璃基质上培养的SYF细胞对称地伸长为纺锤形细胞,在细胞两端形成粘着斑。当用Src酪氨酸激酶的选择性抑制剂Src抑制剂5处理正常成纤维细胞时,它们会伸长为对称的纺锤形细胞,类似于SYF细胞。这些结果表明,伸展和伸长过程中的细胞极性可能受SFKs调节,并且Src的表达和调节对于细胞伸长过程中极性的形成很重要。